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D-Index & Metrics

Electronics and Electrical Engineering

D-Index
31
Citations
3285
World Ranking
6653
National Ranking
2168

Overview

Syed K. Islam is affiliated with the University of Tennessee at Knoxville in the United States. Their research spans multiple domains within engineering, medicine, and physics, with a focus on electrical and electronic engineering and biomedical applications.

The main fields of study include:

  • Engineering
  • Medicine
  • Physics and Astronomy

Within these fields, Syed K. Islam has contributed extensively to several subfields, notably:

  • Electrical and Electronic Engineering
  • Biomedical Engineering
  • Atomic and Molecular Physics, and Optics
  • Physiology
  • Condensed Matter Physics

Their research topics cover a range of advanced issues in both fundamental and applied sciences. Main topics of work include:

  • Obstructive Sleep Apnea Research
  • GaN-based semiconductor devices and materials
  • Energy Harvesting in Wireless Networks
  • Advanced Sensor and Energy Harvesting Materials
  • Advancements in Semiconductor Devices and Circuit Design
  • Wireless Power Transfer Systems
  • Diabetes Management and Research

Frequent co-authors in Syed K. Islam's publications are:

  • Md Maruf Hossain Shuvo
  • Omiya Hassan
  • Twisha Titirsha
  • Dilruba Parvin
  • Abu Saleh Mohammad Mosa

Islam's publications have appeared in a variety of scientific venues, with multiple papers published in certain journals. These venues include:

  • International Journal of High Speed Electronics and Systems
  • Sensors
  • Journal of Signal Processing Systems
  • 2022 IEEE International Symposium on Medical Measurements and Applications (MeMeA)
  • Proceedings of the IEEE

Recent papers authored or co-authored by Syed K. Islam illustrate their interdisciplinary work and recent contributions:

  • Efficient Acceleration of Deep Learning Inference on Resource-Constrained Edge Devices: A Review, 2022, Proceedings of the IEEE
  • Energy Harvesting in Implantable and Wearable Medical Devices for Enduring Precision Healthcare, 2022, Energies
  • Implantable Aptamer-Graphene Microtransistors for Real-Time Monitoring of Neurochemical Release in Vivo, 2022, Nano Letters
  • Deep Multitask Learning by Stacked Long Short-Term Memory for Predicting Personalized Blood Glucose Concentration, 2023, IEEE Journal of Biomedical and Health Informatics
  • Modeling of Enhancement-Mode GaN-GIT for High-Power and High-Temperature Application, 2020, IEEE Transactions on Electron Devices

Best Publications

  • An Inductive Link-Based Wireless Power Transfer System for Biomedical Applications

    M. A. Adeeb;A. B. Islam;M. R. Haider;F. S. Tulip

  • EGFET-Based Sensors for Bioanalytical Applications: A Review.

    Salvatore Andrea Pullano;Costantino Davide Critello;Ifana Mahbub;Nishat Tarannum Tasneem

  • Low-Voltage Bulk-Driven Operational Amplifier With Improved Transconductance

    Liang Zuo;Syed K. Islam

  • Temperature dependent analytical model for current-voltage characteristics of AlGaN/GaN power HEMT

    M.A. Huque;S.A. Eliza;T. Rahman;H.F. Huq

  • A Low-Power Wireless Piezoelectric Sensor-Based Respiration Monitoring System Realized in CMOS Process

    Ifana Mahbub;Salvatore Andrea Pullano;Hanfeng Wang;Syed Kamrul Islam

  • Effects of silicon carbide (SiC) power devices on HEV PWM inverter losses

    B. Ozpineci;L.M. Tolbert;S.K. Islam;M. Hasanuzzaman

  • Energy Harvesting in Implantable and Wearable Medical Devices for Enduring Precision Healthcare

    Unknown

  • Implantable Aptamer-Graphene Microtransistors for Real-Time Monitoring of Neurochemical Release in Vivo.

    Unknown

  • Low-Power Low-Voltage Current Readout Circuit for Inductively Powered Implant System

    Mohammad R Haider;Syed K Islam;Salwa Mostafa;Mo Zhang

  • A 200 °C Universal Gate Driver Integrated Circuit for Extreme Environment Applications

    M. A. Huque;S. K. Islam;L. M. Tolbert;B. J. Blalock

  • A bioreporter bioluminescent integrated circuit for very low-level chemical sensing in both gas and liquid environments

    R. Vijayaraghavan;S.K. Islam;M. Zhang;S. Ripp

  • Impact of SiC Power Electronic Devices for Hybrid Electric Vehicles

    Leon M. Tolbert;Burak Ozpineci;Syed K. Islam;Fang Z. Peng

  • Large-Signal Modeling of SOI MESFETs

    A. Balijepalli;R. Vijayaraghavan;J. Ervin;J. Yang

  • Design and Optimization of Printed Circuit Board Inductors for Wireless Power Transfer System

    Ashraf B. Islam;Syed K. Islam;Fahmida S. Tulip

  • SOI-based integrated circuits for high-temperature power electronics applications

    R. L. Greenwell;B. M. McCue;L. Zuo;M. A. Huque

  • Effects of temperature variation (300–600 K) in MOSFET modeling in 6H–silicon carbide

    Md. Hasanuzzaman;Syed K. Islam;Syed K. Islam;Leon M. Tolbert;Leon M. Tolbert

  • Silicon-on-insulator-based high-voltage, high-temperature integrated circuit gate driver for silicon carbide-based power field effect transistors

    Mohammad A Huque;Leon M Tolbert;Benjamin Blalock;Syed K Islam

  • Temperature dependency of MOSFET device characteristics in 4H- and 6H-silicon carbide (SiC)

    Hasanuzzaman;Syed K. Islam;Syed K. Islam;Leon M. Tolbert;Leon M. Tolbert;Mohammad T. Alam

  • A Low-Power 1-V Potentiostat for Glucose Sensors

    Liang Zuo;Syed K. Islam;Ifana Mahbub;Farhan Quaiyum

  • Sensors and Low Power Signal Processing

    Syed Kamrul Islam;Mohammad Rafiqul Haider

  • A Glucose Biosensor Using CMOS Potentiostat and Vertically Aligned Carbon Nanofibers

    Khandaker A. Al Mamun;Syed K. Islam;Dale K. Hensley;Nicole McFarlane

  • Testing, characterization, and modeling of SiC diodes for transportation applications

    B. Ozpineci;L.M. Tolbert;S.K. Islam;F.Z. Peng

  • Silicon-on-insulator based high-temperature electronics for automotive applications

    M.A. Huque;S.K. Islam;B.J. Blalock;C. Su

  • An SOI-based High-Voltage, High-Temperature Gate-Driver for SiC FET

    M.A. Huque;R. Vijayaraghavan;M. Zhang;B.J. Blalock

  • A miniaturized transcutaneous system for continuous glucose monitoring

    Robert A. Croce;SanthiSagar Vaddiraju;Jun Kondo;Yan Wang

  • Temperature dependency of MOSFET device characteristics in 4H- and 6H-silicon carbide (SiC)

    M. Hasanuzzama;S.K. Islam;L.M. Tolbert;M.T. Alam

Frequent Co-Authors

Leon M. Tolbert
Leon M. Tolbert University of Tennessee at Knoxville
Benjamin J. Blalock
Benjamin J. Blalock University of Tennessee at Knoxville
Burak Ozpineci
Burak Ozpineci Oak Ridge National Laboratory
Fotios Papadimitrakopoulos
Fotios Papadimitrakopoulos University of Connecticut
Garrett S. Rose
Garrett S. Rose University of Tennessee at Knoxville
Michael L. Simpson
Michael L. Simpson University of Tennessee at Knoxville
Philip D. Rack
Philip D. Rack University of Tennessee at Knoxville
Aly E. Fathy
Aly E. Fathy University of Tennessee at Knoxville
Michael A. Guillorn
Michael A. Guillorn IBM (United States)
Thomas Thundat
Thomas Thundat University at Buffalo, State University of New York

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